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Near-surface seismic reflection profiling of the Matanuska Glacier, Alaska

机译:阿拉斯加马塔努斯卡冰川的近地表地震反射剖面

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Several common-midpoint seismic reflection profiles collected on the Matanuska Glacier, Alaska, clearly demonstrate the feasibility of collecting high-quality, high-resolution near-surface reflection data on a temperate glacier. The results indicate that high-resolution seismic reflection can be used to accurately determine the thickness and horizontal distribution of debris-rich ice at the base of the glacier. The basal ice thickens about 30% over a 300-m distance as the glacier flows out of an overdeepening. The reflection events ranged from 80- to 140-m depth along the longitudinal axis of the glacier. The dominant reflection is from the contact between clean, englacial ice and the underlying debris-rich basal ice, but a strong characteristic reflection is also observed from the base of the debris-rich ice (bottom of the glacier). The P-wave propagation velocity at the surface and throughout the englacial ice is 3600 m/s, and the frequency content of the reflections is in excess of 800 Hz. Supporting drilling data indicate that depth estimates are correct to within +- 1 m.
机译:在阿拉斯加的马塔努斯卡冰川上收集的几个普通中点地震反射剖面图清楚地表明了在温带冰川上收集高质量,高分辨率的近地表反射数据的可行性。结果表明,高分辨率地震反射可用于准确确定冰川底部富含碎屑的冰的厚度和水平分布。随着冰川从超深处流出,基底冰在300米的距离上约增厚30%。沿冰川纵轴的反射事件深度为80-140 m。主要的反射来自干净的冰川冰与下面的富含碎屑的基础冰之间的接触,但是从富含碎屑的冰的底部(冰川的底部)也观察到了强烈的特征反射。在地表和整个冰川冰上的P波传播速度为3600 m / s,反射的频率成分超过800 Hz。辅助钻井数据表明,深度估算值正确至±1 m以内。

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